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用于钠金属电池的具有钠离子去溶剂化功能的天然蚕茧衍生隔膜

Natural Silkworm Cocoon-Derived Separator with Na-Ion De-Solvated Function for Sodium Metal Batteries.

作者信息

Wang Zhaoyang, Zhou Zihan, Gao Xing, Liu Qian, Man Jianzong, Du Fanghui, Xiong Fangyu

机构信息

Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, College of Chemistry Engineering, Liaocheng University, Liaocheng 252059, China.

College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China.

出版信息

Molecules. 2024 Oct 11;29(20):4813. doi: 10.3390/molecules29204813.

Abstract

The commercialization of sodium batteries faces many challenges, one of which is the lack of suitable high-quality separators. Herein, we presented a novel natural silkworm cocoon-derived separator (SCS) obtained from the cocoon inner membrane after a simple degumming process. A Na||Na symmetric cell assembled with this separator can be stably cycled for over 400 h under test conditions of 0.5 mA cm-0.5 mAh cm. Moreover, the Na||SCS||NaV(PO) full cell exhibits an initial capacity of 79.3 mAh g at 10 C and a capacity retention of 93.6% after 1000 cycles, which far exceeded the 57.5 mAh g and 42.1% of the full cell using a commercial glass fiber separator (GFS). The structural origin of this excellent electrochemical performance lies in the fact that cationic functional groups (such as amino groups) on silkworm proteins can de-solvate Na-ions by anchoring the ClO solvent sheath, thereby enhancing the transference number, transport kinetics and deposition/dissolution properties of Na-ions. In addition, the SCS has significantly better mechanical properties and thinness indexes than the commercial GFS, and, coupled with the advantages of being natural, cheap, non-polluting and degradable, it is expected to be used as a commercialized sodium battery separator material.

摘要

钠电池的商业化面临诸多挑战,其中之一是缺乏合适的高质量隔膜。在此,我们展示了一种新型的天然蚕茧衍生隔膜(SCS),它是通过简单的脱胶工艺从蚕茧内膜获得的。用这种隔膜组装的Na||Na对称电池在0.5 mA cm-0.5 mAh cm的测试条件下可以稳定循环超过400小时。此外,Na||SCS||NaV(PO)全电池在10 C时的初始容量为79.3 mAh g,在1000次循环后的容量保持率为93.6%,这远远超过了使用商业玻璃纤维隔膜(GFS)的全电池的57.5 mAh g和42.1%。这种优异电化学性能的结构根源在于蚕茧蛋白上的阳离子官能团(如氨基)可以通过锚定ClO溶剂鞘使Na离子去溶剂化,从而提高Na离子的迁移数、传输动力学以及沉积/溶解性能。此外,SCS的机械性能和薄度指标明显优于商业GFS,并且由于其天然、廉价、无污染和可降解的优点,有望用作商业化钠电池隔膜材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46c7/11510509/47fad80f134d/molecules-29-04813-g001.jpg

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